S− H bond dissociation enthalpies in thiophenols: a time-resolved photoacoustic calorimetry and quantum chemistry study

RM Borges dos Santos, VSF Muralha… - The Journal of …, 2002 - ACS Publications
RM Borges dos Santos, VSF Muralha, CF Correia, RC Guedes, BJ Costa Cabral
The Journal of Physical Chemistry A, 2002ACS Publications
Time-resolved photoacoustic calorimetry (TR-PAC) and quantum chemistry calculations
were used to investigate the energetics of sulfur− hydrogen bonds in thiophenol and four
para-substituted thiophenols, 4-XC6H4SH (X= CH3, OCH3, Cl, and CF3). The result
obtained for the PhS− H gas-phase bond dissociation enthalpy, derived from the PAC
experimental results in solution, is 349.4±4.5 kJ mol-1. This value is significantly higher than
recent literature values but agrees with a value suggested some 20 years ago in a widely …
Time-resolved photoacoustic calorimetry (TR-PAC) and quantum chemistry calculations were used to investigate the energetics of sulfur−hydrogen bonds in thiophenol and four para-substituted thiophenols, 4-XC6H4SH (X = CH3, OCH3, Cl, and CF3). The result obtained for the PhS−H gas-phase bond dissociation enthalpy, derived from the PAC experimental results in solution, is 349.4 ± 4.5 kJ mol-1. This value is significantly higher than recent literature values but agrees with a value suggested some 20 years ago in a widely used review. The PAC result also concurs with the value computed at a high theory level, G3(MP2), 346.8 kJ mol-1. The data obtained for the substituted thiophenols support the idea that substituent effects are less pronounced on the S−H bond dissociation enthalpy than on the O−H bond dissociation enthalpy of the corresponding phenols.
ACS Publications
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